Optimal multiple syndrome probabilistic diagnosis

Sunggu Lee, K. Shin
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引用次数: 15

Abstract

The authors discuss the distributed self-diagnosis of a multiprocessor/multicomputer system based on interprocessor tests with imperfect fault coverage (thus also permitting intermittently fault processors). It is shown that by using multiple fault syndromes, it is possible to achieve significantly better diagnosis than by using a single fault syndrome, even when the amount of time devoted to testing is the same. The authors derive a multiple syndrome diagnosis algorithm that is optimal in the level of diagnostic accuracy achieved (among diagnosis algorithms of a certain type to be defined) and produces good results even with sparse interconnection networks and interprocessor test with low fault coverage. Furthermore, they prove upper and lower bounds are proved on the number of fault syndromes required to produce asymptotically a 100% correct diagnostic as N to infinity . Their solution and another multiple syndrome diagnosis solution by D. Fussell and S. Rangarajan are evaluated both analytically and with simulations.<>
最佳多综合征概率诊断
作者讨论了基于不完全故障覆盖的处理器间测试的多处理器/多计算机系统的分布式自诊断(因此也允许间歇故障处理器)。结果表明,即使用于测试的时间相同,通过使用多个故障综合征,也可能比使用单个故障综合征获得更好的诊断结果。作者推导了一种多证候诊断算法,该算法在实现诊断准确率水平上是最优的(在待定义的某种类型的诊断算法中),即使在稀疏互连网络和低故障覆盖率的处理器间测试下也能产生良好的结果。进一步证明了在N→∞时产生渐近100%正确诊断所需的故障证数的上界和下界。他们的解决方案和D. Fussell和S. Rangarajan的另一个多综合征诊断方案进行了分析和模拟评估
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